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对brahma增强子的遗传筛选揭示了果蝇中BRM染色质重塑复合物与delta-notch信号转导途径之间的功能相互作用。

Genetic screens for enhancers of brahma reveal functional interactions between the BRM chromatin-remodeling complex and the delta-notch signal transduction pathway in Drosophila.

作者信息

Armstrong Jennifer A, Sperling Adam S, Deuring Renate, Manning Laurina, Moseley Sarah L, Papoulas Ophelia, Piatek Caroline I, Doe Chris Q, Tamkun John W

机构信息

Department of Molecular, Cell and Developmental Biology, University of California, Santa Cruz, California 95064, USA.

出版信息

Genetics. 2005 Aug;170(4):1761-74. doi: 10.1534/genetics.105.041327. Epub 2005 Jun 8.

Abstract

The Drosophila trithorax group gene brahma (brm) encodes the ATPase subunit of a 2-MDa chromatin-remodeling complex. brm was identified in a screen for transcriptional activators of homeotic genes and subsequently shown to play a global role in transcription by RNA polymerase II. To gain insight into the targeting, function, and regulation of the BRM complex, we screened for mutations that genetically interact with a dominant-negative allele of brm (brm(K804R)). We first screened for dominant mutations that are lethal in combination with a brm(K804R) transgene under control of the brm promoter. In a distinct but related screen, we identified dominant mutations that modify eye defects resulting from expression of brm(K804R) in the eye-antennal imaginal disc. Mutations in three classes of genes were identified in our screens: genes encoding subunits of the BRM complex (brm, moira, and osa), other proteins directly involved in transcription (zerknullt and RpII140), and signaling molecules (Delta and vein). Expression of brm(K804R) in the adult sense organ precursor lineage causes phenotypes similar to those resulting from impaired Delta-Notch signaling. Our results suggest that signaling pathways may regulate the transcription of target genes by regulating the activity of the BRM complex.

摘要

果蝇三体胸节组基因brahma(brm)编码一个2兆道尔顿染色质重塑复合物的ATP酶亚基。brm是在一项针对同源异型基因转录激活因子的筛选中被鉴定出来的,随后被证明在RNA聚合酶II介导的转录过程中发挥全局性作用。为了深入了解BRM复合物的靶向作用、功能及调控机制,我们筛选了与brm的一个显性负性等位基因(brm(K804R))发生遗传相互作用的突变。我们首先筛选了在brm启动子控制下与brm(K804R)转基因组合时具有致死性的显性突变。在另一个不同但相关的筛选中,我们鉴定出了能修饰因在眼触角成虫盘表达brm(K804R)而导致的眼部缺陷的显性突变。在我们的筛选中鉴定出了三类基因突变:编码BRM复合物亚基的基因(brm、moira和osa)、直接参与转录的其他蛋白质(zerknullt和RpII140)以及信号分子(Delta和vein)。在成体感觉器官前体细胞系中表达brm(K804R)会导致与Delta-Notch信号传导受损所产生的表型相似的表型。我们的结果表明,信号通路可能通过调控BRM复合物的活性来调节靶基因的转录。

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